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Investigation on tungsten inert gas welding of in situ Al-15 and 20 Mg2Si composites with an Al-Si filler

机译:含铝硅填料的原位Al-15和20 Mg2Si复合材料的钨极惰性气体保护焊研究

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摘要

The feasibility of joining an in situ Al-Mg2Si composite through the process of tungsten inert gas welding is investigated in this study. The study uses an in situ metal matrix composite reinforced with two different particulate percentages, namely 15 wt.% and 20 wt.% Mg2Si. Welding current was adjusted at five different values between 80 and 100 amp. When joint integrity was examined under an optical microscope, three areas distinct from the parent metal were identified in the weldment region. Tension and micro-hardness tests were subsequently performed to determine the mechanical properties of the joints. The results of the micro-hardness tests correlate with those of the microstructural analyses. Joints welded with a welding current in the range of 80-85 amp displayed the highest degree of micro-hardness, with the low heat input even providing higher weld strength and integrity. The fracture produced in the welded specimens was in the base metal matrix composite, indicating a strong interface between the base metal matrix composite and the weld. It can be concluded that the tungsten inert gas welding process is very promising for the welding of in situ Al-Mg2Si metal matrix composites.
机译:本研究研究了通过钨极惰性气体保护焊工艺连接原位Al-Mg2Si复合材料的可行性。该研究使用了以两种不同的颗粒百分比(即15 wt。%和20 wt。%Mg2Si)增强的原位金属基复合材料。将焊接电流调整为80至100安培之间的五个不同值。在光学显微镜下检查接头完整性时,在焊件区域发现了三个不同于母材的区域。随后进行拉伸和显微硬度测试,以确定接头的机械性能。显微硬度测试的结果与显微组织分析的结果相关。焊接电流在80-85 amp范围内的焊接接头表现出最高的显微硬度,低热量输入甚至提供更高的焊接强度和完整性。焊接样品中产生的断裂发生在母材基体复合材料中,表明母材基体复合材料和焊缝之间有很强的界面。可以得出结论,钨极惰性气体保护焊工艺对于原位Al-Mg2Si金属基复合材料的焊接非常有前途。

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